bas 2000 radioimage analyzer (FUJIFILM)
90
Structured Review
FUJIFILM
bas 2000 radioimage analyzer
Bas 2000 Radioimage Analyzer, supplied by FUJIFILM, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/product/radioimaging+analyzer+bas+2000/bas+2000+radioimage+analyzer/us07423126-338-39-43
Average 90 stars, based on 1 article reviews
Bas 2000 Radioimage Analyzer, supplied by FUJIFILM, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/product/radioimaging+analyzer+bas+2000/bas+2000+radioimage+analyzer/us07423126-338-39-43
Average 90 stars, based on 1 article reviews
bas 2000 radioimage analyzer - by Bioz Stars,
2026-09
90/100 stars
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Related Articles
Nucleic Acid Electrophoresis:Article Title: Nitrous oxide, but not xenon, affects the signaling in the neuronal growth cone. Article Snippet: Fukura, Haruhiko, Yasuharu, Kitani, Yoshiaki, Komiya, and Michihiro, Igarashi: Nitrous oxide, but not xenon, affects the signaling in the neuronal growth eons.. Prog.. Neuro-Psychopharmacol, & Biol. Article Title: Signaling pathway downstream of GABAA receptor in the growth cone. Article Snippet: The growth cone is responsible for axonal elongation and pathfinding by responding to various modulators for neurite growth, including neurotransmitters, although the sensor mechanisms are not fully understood.. Among neurotransmitters, GABA is most likely to demonstrate activity in vivo because GABA and the GABAA receptor appear even in early stages of CNS development.. We investigated the GABAA receptor-mediated signaling pathway in the growth cone using isolated growth cones (IGCs). Autoradiography:Article Title: Nitrous oxide, but not xenon, affects the signaling in the neuronal growth cone. Article Snippet: Fukura, Haruhiko, Yasuharu, Kitani, Yoshiaki, Komiya, and Michihiro, Igarashi: Nitrous oxide, but not xenon, affects the signaling in the neuronal growth eons.. Prog.. Neuro-Psychopharmacol, & Biol. Article Title: Stimulation of L-type Ca2+ channel in growth cones activates two independent signaling pathways Article Snippet: Although growth cones respond to various modulators of neurite outgrowth, such as neurotrophins, neurotransmitters, and cell adhesion molecules, the signal-transducing mechanisms for these modulators in growth cones are unclear.. Since recent studies have suggested that the signals of these modulators are mediated by Ca21 influx through L-type voltagesensitive Ca21 channels (VSCCs) in the growth cone, we examined L-type VSCC-dependent signaling pathways, using isolated growth cones (IGCs) from developing rat forebrains.. Binding assays revealed that L-type VSCC is enriched in growth cone membrane and gradually decreased in amount developmentally, while N-type VSCC has the opposite tendency. Article Title: Signaling pathway downstream of GABAA receptor in the growth cone. Article Snippet: The growth cone is responsible for axonal elongation and pathfinding by responding to various modulators for neurite growth, including neurotransmitters, although the sensor mechanisms are not fully understood.. Among neurotransmitters, GABA is most likely to demonstrate activity in vivo because GABA and the GABAA receptor appear even in early stages of CNS development.. We investigated the GABAA receptor-mediated signaling pathway in the growth cone using isolated growth cones (IGCs). Imaging:Article Title: Nitrous oxide, but not xenon, affects the signaling in the neuronal growth cone. Article Snippet: Fukura, Haruhiko, Yasuharu, Kitani, Yoshiaki, Komiya, and Michihiro, Igarashi: Nitrous oxide, but not xenon, affects the signaling in the neuronal growth eons.. Prog.. Neuro-Psychopharmacol, & Biol. Article Title: Stimulation of L-type Ca2+ channel in growth cones activates two independent signaling pathways Article Snippet: Although growth cones respond to various modulators of neurite outgrowth, such as neurotrophins, neurotransmitters, and cell adhesion molecules, the signal-transducing mechanisms for these modulators in growth cones are unclear.. Since recent studies have suggested that the signals of these modulators are mediated by Ca21 influx through L-type voltagesensitive Ca21 channels (VSCCs) in the growth cone, we examined L-type VSCC-dependent signaling pathways, using isolated growth cones (IGCs) from developing rat forebrains.. Binding assays revealed that L-type VSCC is enriched in growth cone membrane and gradually decreased in amount developmentally, while N-type VSCC has the opposite tendency. Article Title: Signaling pathway downstream of GABAA receptor in the growth cone. Article Snippet: The growth cone is responsible for axonal elongation and pathfinding by responding to various modulators for neurite growth, including neurotransmitters, although the sensor mechanisms are not fully understood.. Among neurotransmitters, GABA is most likely to demonstrate activity in vivo because GABA and the GABAA receptor appear even in early stages of CNS development.. We investigated the GABAA receptor-mediated signaling pathway in the growth cone using isolated growth cones (IGCs). Inverse Gas Chromatography:Article Title: Stimulation of L-type Ca2+ channel in growth cones activates two independent signaling pathways Article Snippet: Although growth cones respond to various modulators of neurite outgrowth, such as neurotrophins, neurotransmitters, and cell adhesion molecules, the signal-transducing mechanisms for these modulators in growth cones are unclear.. Since recent studies have suggested that the signals of these modulators are mediated by Ca21 influx through L-type voltagesensitive Ca21 channels (VSCCs) in the growth cone, we examined L-type VSCC-dependent signaling pathways, using isolated growth cones (IGCs) from developing rat forebrains.. Binding assays revealed that L-type VSCC is enriched in growth cone membrane and gradually decreased in amount developmentally, while N-type VSCC has the opposite tendency. Article Title: Signaling pathway downstream of GABAA receptor in the growth cone. Article Snippet: The growth cone is responsible for axonal elongation and pathfinding by responding to various modulators for neurite growth, including neurotransmitters, although the sensor mechanisms are not fully understood.. Among neurotransmitters, GABA is most likely to demonstrate activity in vivo because GABA and the GABAA receptor appear even in early stages of CNS development.. We investigated the GABAA receptor-mediated signaling pathway in the growth cone using isolated growth cones (IGCs). Electrophoresis:Article Title: Stimulation of L-type Ca2+ channel in growth cones activates two independent signaling pathways Article Snippet: Although growth cones respond to various modulators of neurite outgrowth, such as neurotrophins, neurotransmitters, and cell adhesion molecules, the signal-transducing mechanisms for these modulators in growth cones are unclear.. Since recent studies have suggested that the signals of these modulators are mediated by Ca21 influx through L-type voltagesensitive Ca21 channels (VSCCs) in the growth cone, we examined L-type VSCC-dependent signaling pathways, using isolated growth cones (IGCs) from developing rat forebrains.. Binding assays revealed that L-type VSCC is enriched in growth cone membrane and gradually decreased in amount developmentally, while N-type VSCC has the opposite tendency. Article Title: Signaling pathway downstream of GABAA receptor in the growth cone. Article Snippet: The growth cone is responsible for axonal elongation and pathfinding by responding to various modulators for neurite growth, including neurotransmitters, although the sensor mechanisms are not fully understood.. Among neurotransmitters, GABA is most likely to demonstrate activity in vivo because GABA and the GABAA receptor appear even in early stages of CNS development.. We investigated the GABAA receptor-mediated signaling pathway in the growth cone using isolated growth cones (IGCs). Western Blot:Article Title: Stimulation of L-type Ca2+ channel in growth cones activates two independent signaling pathways Article Snippet: Although growth cones respond to various modulators of neurite outgrowth, such as neurotrophins, neurotransmitters, and cell adhesion molecules, the signal-transducing mechanisms for these modulators in growth cones are unclear.. Since recent studies have suggested that the signals of these modulators are mediated by Ca21 influx through L-type voltagesensitive Ca21 channels (VSCCs) in the growth cone, we examined L-type VSCC-dependent signaling pathways, using isolated growth cones (IGCs) from developing rat forebrains.. Binding assays revealed that L-type VSCC is enriched in growth cone membrane and gradually decreased in amount developmentally, while N-type VSCC has the opposite tendency. Article Title: Signaling pathway downstream of GABAA receptor in the growth cone. Article Snippet: The growth cone is responsible for axonal elongation and pathfinding by responding to various modulators for neurite growth, including neurotransmitters, although the sensor mechanisms are not fully understood.. Among neurotransmitters, GABA is most likely to demonstrate activity in vivo because GABA and the GABAA receptor appear even in early stages of CNS development.. We investigated the GABAA receptor-mediated signaling pathway in the growth cone using isolated growth cones (IGCs). Radioactivity:Article Title: Application of vanadate-induced nucleotide trapping to plant cells for detection of ABC proteins. Article Snippet: .. The radioactivity trapped by ABC proteins was analyzed with a |